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嵌入路面的压电能量收集器信号响应特性的数值分析

Numerical Analysis of Signal Response Characteristic of Piezoelectric Energy Harvesters Embedded in Pavement.

作者信息

Yang Hailu, Zhao Qian, Guo Xueli, Zhang Weidong, Liu Pengfei, Wang Linbing

机构信息

National Center for Materials Service Safety, University of Science and Technology Beijing (USTB), Beijing 100083, China.

Research and Development Center of Transport Industry of New Materials, Technologies Application for Highway Construction and Maintenance, Beijing 100088, China.

出版信息

Materials (Basel). 2020 Jun 18;13(12):2770. doi: 10.3390/ma13122770.

Abstract

Piezoelectric pavement energy harvesting is a technological approach to transform mechanical energy into electrical energy. When a piezoelectric energy harvester (PEH) is embedded in asphalt pavements or concrete pavements, it is subjected to traffic loads and generates electricity. The wander of the tire load and the positioning of the PEH affect the power generation; however, they were seldom comprehensively investigated until now. In this paper, a numerical study on the influence of embedding depth of the PEH and the horizontal distance between a tire load and the PEH on piezoelectric power generation is presented. The result shows that the relative position between the PEH and the load influences the voltage magnitude, and different modes of stress state change voltage polarity. Two mathematic correlations between the embedding depth, the horizontal distance, and the generated voltage were fitted based on the computational results. This study can be used to estimate the power generation efficiency, and thus offer basic information for further development to improve the practical design of PEHs in an asphalt pavement.

摘要

压电路面能量采集是一种将机械能转化为电能的技术方法。当压电能量采集器(PEH)嵌入沥青路面或混凝土路面时,它会受到交通荷载作用并产生电能。轮胎荷载的移动以及PEH的位置会影响发电;然而,直到现在它们很少被全面研究。本文给出了关于PEH的嵌入深度以及轮胎荷载与PEH之间的水平距离对压电发电影响的数值研究。结果表明,PEH与荷载之间的相对位置会影响电压幅值,并且不同的应力状态模式会改变电压极性。基于计算结果拟合了嵌入深度、水平距离与产生电压之间的两个数学关联式。该研究可用于估计发电效率,从而为进一步改进沥青路面中PEH的实际设计提供基础信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/976d/7344615/103e0097fa84/materials-13-02770-g001.jpg

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